An aqueous fluoropolymer electrolyte emulsion forms membranes with high proton conductivity while preventing softening and creasing.
Functional dispersants copolymerize with resin to anchor silver nanowires, preventing drift and eliminating extra carbon layers.
Doping gallium indium oxide with metal nanoparticles resolves the contradiction between luminescent intensity and chemical stability.
Porous gas sensor electrode disperses conductive and ceramic particles to create reaction fields, resolving high resistance from ceramic mixing.
An upward lifting force on the side weir counters downward friction from rotating mold rolls, suppressing gap formation and preventing molten metal leakage.
Spherical aluminum paste reduces wafer bowing during firing to prevent cracking.
Concentrically twisted copper alloy conductor with low surface oil content enhances rigidity and weld strength.
Optimizing silver particle specific surface area in conductive paste resolves the trade-off between power generation efficiency and adhesive strength.
Selective dissolution removes lithium salts down to 1 ppm, enabling high-purity PS-b-PXVP for precise nanoscale pattern formation.
A tin-plated copper-alloy terminal material uses a nickel-based coating layer to reduce the dynamic friction coefficient at the contact surface.
A copper alloy wire forms a dual fibrous structure with alternating phases to achieve high tensile strength.